Laboratoire d'Ingénierie des Systèmes Macromoléculaires (LISM), Institut de Microbiologie de la Méditerranée (IMM), Aix-Marseille Université, CNRS, UMR 7255, 31 chemin Joseph Aiguier, 13402, Marseille Cedex 20, France.
Laboratoire d'Ingénierie des Systèmes Macromoléculaires (LISM), Institut de Microbiologie de la Méditerranée (IMM), Aix-Marseille Université, CNRS, UMR 7255, 31 chemin Joseph Aiguier, 13402, Marseille Cedex 20, France.
J Mol Biol. 2018 Mar 30;430(7):987-1003. doi: 10.1016/j.jmb.2018.02.008. Epub 2018 Feb 17.
The type VI secretion system (T6SS) is a multiprotein complex used by bacteria to deliver effectors into target cells. The T6SS comprises a bacteriophage-like contractile tail structure anchored to the cell envelope by a membrane complex constituted of the TssJ outer-membrane lipoprotein and the TssL and TssM inner-membrane proteins. TssJ establishes contact with the periplasmic domain of TssM whereas the transmembrane segments of TssM and its cytoplasmic domain interact with TssL. TssL protrudes in the cytoplasm but is anchored by a C-terminal transmembrane helix (TMH). Here, we show that TssL TMH dimerization is required for the stability of the protein and for T6SS function. Using the TOXCAT assay and point mutations of the 23 residues of the TssL TMH, we identified Thr194 and Trp199 as necessary for TssL TMH dimerization. NMR hydrogen-deuterium exchange experiments demonstrated the existence of a dimer with the presence of Trp185 and Trp199 at the interface. A structural model based on molecular dynamic simulations shows that TssL TMH dimer formation involves π-π interactions resulting from the packing of the two Trp199 rings at the C-terminus and of the six aromatic rings of Tyr184, Trp185 and Trp188 at the N-terminus of the TMH.
VI 型分泌系统(T6SS)是细菌用来将效应蛋白输送到靶细胞的一种多蛋白复合物。T6SS 由一个类似于噬菌体的收缩尾结构组成,通过一个由 TssJ 外膜脂蛋白和 TssL 和 TssM 内膜蛋白组成的膜复合物锚定在细胞包膜上。TssJ 与 TssM 的周质域接触,而 TssM 的跨膜片段及其细胞质域与 TssL 相互作用。TssL 在细胞质中突出,但被 C 端跨膜螺旋(TMH)锚定。在这里,我们表明 TssL TMH 二聚化对于蛋白质的稳定性和 T6SS 功能是必需的。使用 TOXCAT 测定和 TssL TMH 的 23 个残基的点突变,我们确定 Thr194 和 Trp199 对于 TssL TMH 二聚化是必需的。NMR 氢氘交换实验证明了存在二聚体,并且在界面处存在 Trp185 和 Trp199。基于分子动力学模拟的结构模型表明,TssL TMH 二聚体的形成涉及π-π相互作用,这是由 C 末端两个 Trp199 环的包装以及 TMH N 末端 Tyr184、Trp185 和 Trp188 的六个芳环的包装引起的。